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Augmin prevents merotelic attachments by promoting proper arrangement of bridging and kinetochore fibers

The human mitotic spindle is made of microtubules nucleated at centrosomes, at kinetochores, and from pre-existing microtubules by the augmin complex. However, it is unknown how the augmin-mediated nucleation affects distinct microtubule classes and thereby mitotic fidelity. Here, we use superresolu...

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Autores principales: Štimac, Valentina, Koprivec, Isabella, Manenica, Martina, Simunić, Juraj, Tolić, Iva M
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9640188/
https://www.ncbi.nlm.nih.gov/pubmed/36269126
http://dx.doi.org/10.7554/eLife.83287
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author Štimac, Valentina
Koprivec, Isabella
Manenica, Martina
Simunić, Juraj
Tolić, Iva M
author_facet Štimac, Valentina
Koprivec, Isabella
Manenica, Martina
Simunić, Juraj
Tolić, Iva M
author_sort Štimac, Valentina
collection PubMed
description The human mitotic spindle is made of microtubules nucleated at centrosomes, at kinetochores, and from pre-existing microtubules by the augmin complex. However, it is unknown how the augmin-mediated nucleation affects distinct microtubule classes and thereby mitotic fidelity. Here, we use superresolution microscopy to analyze the previously indistinguishable microtubule arrangements within the crowded metaphase plate area and demonstrate that augmin is vital for the formation of uniformly arranged parallel units consisting of sister kinetochore fibers connected by a bridging fiber. This ordered geometry helps both prevent and resolve merotelic attachments. Whereas augmin-nucleated bridging fibers prevent merotelic attachments by creating a nearly parallel and highly bundled microtubule arrangement unfavorable for creating additional attachments, augmin-nucleated k-fibers produce robust force required to resolve errors during anaphase. STED microscopy revealed that bridging fibers were impaired twice as much as k-fibers following augmin depletion. The complete absence of bridging fibers from a significant portion of kinetochore pairs, especially in the inner part of the spindle, resulted in the specific reduction of the interkinetochore distance. Taken together, we propose a model where augmin promotes mitotic fidelity by generating assemblies consisting of bridging and kinetochore fibers that align sister kinetochores to face opposite poles, thereby preventing erroneous attachments.
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spelling pubmed-96401882022-11-08 Augmin prevents merotelic attachments by promoting proper arrangement of bridging and kinetochore fibers Štimac, Valentina Koprivec, Isabella Manenica, Martina Simunić, Juraj Tolić, Iva M eLife Cancer Biology The human mitotic spindle is made of microtubules nucleated at centrosomes, at kinetochores, and from pre-existing microtubules by the augmin complex. However, it is unknown how the augmin-mediated nucleation affects distinct microtubule classes and thereby mitotic fidelity. Here, we use superresolution microscopy to analyze the previously indistinguishable microtubule arrangements within the crowded metaphase plate area and demonstrate that augmin is vital for the formation of uniformly arranged parallel units consisting of sister kinetochore fibers connected by a bridging fiber. This ordered geometry helps both prevent and resolve merotelic attachments. Whereas augmin-nucleated bridging fibers prevent merotelic attachments by creating a nearly parallel and highly bundled microtubule arrangement unfavorable for creating additional attachments, augmin-nucleated k-fibers produce robust force required to resolve errors during anaphase. STED microscopy revealed that bridging fibers were impaired twice as much as k-fibers following augmin depletion. The complete absence of bridging fibers from a significant portion of kinetochore pairs, especially in the inner part of the spindle, resulted in the specific reduction of the interkinetochore distance. Taken together, we propose a model where augmin promotes mitotic fidelity by generating assemblies consisting of bridging and kinetochore fibers that align sister kinetochores to face opposite poles, thereby preventing erroneous attachments. eLife Sciences Publications, Ltd 2022-10-21 /pmc/articles/PMC9640188/ /pubmed/36269126 http://dx.doi.org/10.7554/eLife.83287 Text en © 2022, Štimac, Koprivec et al https://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Cancer Biology
Štimac, Valentina
Koprivec, Isabella
Manenica, Martina
Simunić, Juraj
Tolić, Iva M
Augmin prevents merotelic attachments by promoting proper arrangement of bridging and kinetochore fibers
title Augmin prevents merotelic attachments by promoting proper arrangement of bridging and kinetochore fibers
title_full Augmin prevents merotelic attachments by promoting proper arrangement of bridging and kinetochore fibers
title_fullStr Augmin prevents merotelic attachments by promoting proper arrangement of bridging and kinetochore fibers
title_full_unstemmed Augmin prevents merotelic attachments by promoting proper arrangement of bridging and kinetochore fibers
title_short Augmin prevents merotelic attachments by promoting proper arrangement of bridging and kinetochore fibers
title_sort augmin prevents merotelic attachments by promoting proper arrangement of bridging and kinetochore fibers
topic Cancer Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9640188/
https://www.ncbi.nlm.nih.gov/pubmed/36269126
http://dx.doi.org/10.7554/eLife.83287
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